Mitogenomics providing new insights into the phylogenetic structure of subfamily Panchaetothripinae (Thripidae: Terebrantia).

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Abhishek Ghosh, Kaomud Tyagi, Dhriti Banerjee, Vikas Kumar
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引用次数: 0

Abstract

Complete mitochondrial genome of two species of subfamily Panchaetothripinae, Astrothrips tumiceps (16,467 bp) and Monilothrips kempi (14,773 bp) are generated by Next-Generation Sequencing Method. In this study, the detailed annotation of these mitogenomes as well as comparative analyses are carried out to explore the codon usage, gene composition, and phylogenetic relationship of subfamilies of family Thripidae. Moreover, the gene rearrangement of subfamily Panchaetothripinae of family Thripidae is also studied. Both the mitogenomes featured by 37 genes including 13 PCGs, 22 tRNAs, 2 rRNAs and with single putative control region with a positive AT-skew and negative GC-skew. trnS1 without DHU arm in both species, trnV without DHU arm in M. kempi, and trnE without TΨC loop in As. tumiceps. Further, codon based comparative analysis depicted the existence of natural selection pressure on all the PCGs in all the subfamilies of family Thripidae. The phylogenetic analyses, using the Bayesian inference (BI) and Maximum likelihood (ML) supported the monophyly of two suborders and family Phlaeothripidae. The family Thripidae is recovered as paraphyletic and subfamily Panchaetothripinae is in sister relationship with family Aeolothripidae and Stenurothripidae rather than the other subfamilies of family Thripidae. The gene order of the order Thysanoptera is highly rearranged, while few members of the subfamily Panchaetothripinae showed similar gene order to family Stenurothripidae. Therefore, this study suggests that the phylogenetic relationship between the subfamily Panchaetothripinae and other families is uncertain, necessitating a whole genome-based study to clarify the position of Panchaetothripinae within the suborder Terebrantia.

有丝分裂基因组学为 Panchaetothripinae 亚科(蓟马科:Terebrantia)的系统发育结构提供了新的见解。
本研究采用新一代测序方法,获得了蓟马亚科两个物种的完整线粒体基因组:瘤蓟马(Astrothrips tumiceps)(16,467 bp)和单蓟马(Monilothrips kempi)(14,773 bp)。本研究对这些有丝分裂基因组进行了详细注释和比较分析,以探讨蓟马科亚科的密码子使用、基因组成和系统发育关系。此外,还研究了蓟马科 Panchaetothripinae 亚科的基因重排情况。这两个物种的有丝分裂基因组都有 37 个基因,包括 13 个 PCGs、22 个 tRNAs、2 个 rRNAs 和单个推定控制区,其中 AT 偏移为正,GC 偏移为负。此外,基于密码子的比较分析表明,在蓟马科的所有亚科中,所有 PCGs 都存在自然选择压力。利用贝叶斯推断法(BI)和最大似然法(ML)进行的系统发生分析支持两个亚目和 Phlaeothripidae 科的单系性。蓟马科被认为是旁系,而 Panchaetothripinae 亚科与 Aeolothripidae 科和 Stenurothripidae 科而不是蓟马科的其他亚科是姊妹关系。蓟马目基因序列高度重排,而盘尾蓟马亚科的少数成员则表现出与 Stenurothripidae 科相似的基因序列。因此,本研究表明,泛巢蝶亚科与其他科的系统发育关系并不确定,有必要进行基于全基因组的研究,以明确泛巢蝶亚科在蓟马亚目中的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Genetica
Genetica 生物-遗传学
CiteScore
2.70
自引率
0.00%
发文量
32
审稿时长
>12 weeks
期刊介绍: Genetica publishes papers dealing with genetics, genomics, and evolution. Our journal covers novel advances in the fields of genomics, conservation genetics, genotype-phenotype interactions, evo-devo, population and quantitative genetics, and biodiversity. Genetica publishes original research articles addressing novel conceptual, experimental, and theoretical issues in these areas, whatever the taxon considered. Biomedical papers and papers on breeding animal and plant genetics are not within the scope of Genetica, unless framed in an evolutionary context. Recent advances in genetics, genomics and evolution are also published in thematic issues and synthesis papers published by experts in the field.
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